Cikla Ulas, Sahin Balkan, Hanalioglu Sahin, Ahmed Azam S, Niemann David, Baskaya Mustafa K
J Neurosurg. 2018 May 11;130(5):1663-1671. doi: 10.3171/2017.11.JNS17318. Print 2019 May 1.
Cerebrovascular bypass surgery is a challenging yet important neurosurgical procedure that is performed to restore circulation in the treatment of carotid occlusive diseases, giant/complex aneurysms, and skull base tumors. It requires advanced microsurgical skills and dedicated training in microsurgical techniques. Most available training tools, however, either lack the realism of the actual bypass surgery (e.g., artificial vessel, chicken wing models) or require special facilities and regulations (e.g., cadaver, live animal, placenta models). The aim of the present study was to design a readily accessible, realistic, easy-to-build, reusable, and high-fidelity simulator to train neurosurgeons or trainees on vascular anastomosis techniques even in the operating room.
The authors used an anatomical skull and brain model, artificial vessels, and a water pump to simulate both extracranial and intracranial circulations. They demonstrated the step-by-step preparation of the bypass simulator using readily available and affordable equipment and consumables.
All necessary steps of a superficial temporal artery-middle cerebral artery bypass surgery (from skin opening to skin closure) were performed on the simulator under a surgical microscope. The simulator was used by both experienced neurosurgeons and trainees. Feedback survey results from the participants of the microsurgery course suggested that the model is superior to existing microanastomosis training kits in simulating real surgery conditions (e.g., depth, blood flow, anatomical constraints) and holds promise for widespread use in neurosurgical training.
With no requirement for specialized laboratory facilities and regulations, this novel, low-cost, reusable, high-fidelity simulator can be readily constructed and used for neurosurgical training with various scenarios and modifications.
脑血管搭桥手术是一项具有挑战性但又很重要的神经外科手术,用于治疗颈动脉闭塞性疾病、巨大/复杂动脉瘤和颅底肿瘤,以恢复血液循环。它需要先进的显微外科技术和专门的显微外科技术培训。然而,大多数现有的培训工具要么缺乏实际搭桥手术的逼真度(如人工血管、鸡翅模型),要么需要特殊的设施和规定(如尸体、活体动物、胎盘模型)。本研究的目的是设计一种易于获取、逼真、易于构建、可重复使用且高保真的模拟器,以便即使在手术室中也能培训神经外科医生或学员进行血管吻合技术。
作者使用解剖学颅骨和脑模型、人工血管和水泵来模拟颅外和颅内循环。他们展示了如何使用现成且价格合理的设备和耗材逐步制备搭桥模拟器。
在手术显微镜下,在模拟器上完成了颞浅动脉 - 大脑中动脉搭桥手术的所有必要步骤(从切开皮肤到缝合皮肤)。经验丰富的神经外科医生和学员都使用了该模拟器。显微外科课程参与者的反馈调查结果表明,该模型在模拟真实手术条件(如深度、血流、解剖学限制)方面优于现有的显微吻合训练套件,有望在神经外科培训中广泛应用。
这种新型、低成本、可重复使用的高保真模拟器无需专门的实验室设施和规定,可轻松构建并用于各种场景和改进的神经外科培训。